[1] G STOVEA, G HOAREE, M CHERNIAKOV et al. Space-based sub-THz ISAR for space situational awareness-concept and design. IEEE Transactions on Aerospace and Electronic Systems, 58, 1558-1573(2022).
[2] S SHAO, L ZHANG, H LIU. High-resolution ISAR imaging and motion compensation with 2-D joint sparse reconstruction. IEEE Transactions on Geoscience and Remote Sensing, 58, 6791-6811(2020).
[8] D LI, X GUI, H LIU, J SU et al. An ISAR imaging algorithm for maneuvering targets with low SNR based on parameter estimation of multicomponent quadratic FM signals and nonuniform FFT. IEEE Journal of Selected Topics in Applied Earth Observations and Remote Sensing, 9, 5688-5702(2016).
[12] S ZHANG, Y LIU, X LI. Micro-doppler effects removed sparse aperture ISAR imaging via low-rank and double sparsity constrained ADMM and linearized ADMM. IEEE Transactions on Image Processing, 30, 4678-4690(2021).
[13] H DU, P NI, J CHEN et al. Integrated convolution network for ISAR imaging and target Recognition. IEEE Journal on Miniaturization for Air and Space Systems, 4, 431-437(2023).
[14] B F GUO, C X SHANG. Research on bistatic ISAR coherent imaging of space highspeed moving targe, 205-209(2014).
[18] M MARTORELLA, N ACITO, F BERIZZI. Statistical CLEAN technique for ISAR imaging. IEEE Transactions on Geoscience and Remote Sensing, 45, 3552-3560(2007).
[19] F MUNOZ, M PEREZ. Non-uniform rotation rate estimation for ISAR in case of slant range migration induced by angular motion. IET Radar, 1, 251-260(2007).
[20] R L MORRISON, M N DO, D C MUNSON. SAR image autofocus by sharpness optimization:A theoretical study. IEEE Transactions on Image Processing, 16, 2309-2321(2007).
[21] G XU, M D XING, X G XIA et al. Enhanced ISAR imaging and motion estimation with parametric and dynamic sparse bayesian learning. IEEE Transactions on Computational Imaging, 3, 940-952(2017).
[22] K J THOMAS, K A ALAA. Monotonic iterative algorithm for minimum-entropy autofocus, 5, 645-648(2006).
[23] M XING, R WU, Z BAO. High resolution ISAR imaging of highspeed moving targets. IEE Proceedings:Radar,Sonar and Navigation, 152, 58-67(2005).
[25] S ZHANG, S SUN, W ZHANG et al. High-resolution bistatic ISAR image formation for high-speed and complex-motion targets. IEEE Journal of Selected Topics in Applied Earth Observations and Remote Sensing, 8, 3520-3531(2015).
[26] Z LI, X ZHANG, Q YANG et al. Hybrid SAR-ISAR image formation via joint FrFT-WVD processing for BFSAR ship target high-resolution imaging. IEEE Transactions on Geoscience and Remote Sensing, 60, 1-13(2021).
[27] L LI, M ZOU, G JIN. GB-spaceborne bistatic ISAR high-speed compensation method for small space targets, 681-685(2022).
[28] J ZHAO, Y WANG. A cross-range scaling method for ISAR based on 2D MUSIC and WVD-hough transform, 1-3(2023).
[32] W WU, S XU, P HU et al. Inverse synthetic aperture radar imaging of targets with complex motion based on optimized non-uniform rotation transform. Remote Sensing, 10, 593(2018).